Department of Pathology and Immunology, Washington University School of Medicine, Saint Louis, Missouri 63110, USA.
J Biol Chem. 2010 May 28;285(22):16757-70. doi: 10.1074/jbc.M109.097048. Epub 2010 Mar 12.
Surfactant protein D (SP-D) plays diverse and important roles in innate immunity and pulmonary homeostasis. Neutrophils and myeloperoxidase (MPO) colocalized with SP-D in a murine bacterial pneumonia model of acute inflammation, suggesting that MPO-derived reactive species might alter the function of SP-D. Exposure of SP-D to the complete MPO-H(2)O(2)-halide system caused loss of SP-D-dependent aggregating activity. Hypochlorous acid (HOCl), the major oxidant generated by MPO, caused a similar loss of aggregating activity, which was accompanied by the generation of abnormal disulfide-cross-linked oligomers. A full-length SP-D mutant lacking N-terminal cysteine residues and truncation mutants lacking the N-terminal domains were resistant to the oxidant-induced alterations in disulfide bonding. Mass spectroscopy of HOCl-treated human SP-D demonstrated several modifications, but none involved key ligand binding residues. There was detectable oxidation of cysteine 15, but no HOCl-induced cysteine modifications were observed in the C-terminal lectin domain. Together, the findings localize abnormal disulfide cross-links to the N-terminal domain. MPO-deficient mice showed decreased cross-linking of SP-D and increased SP-D-dependent aggregating activity in the pneumonia model. Thus, MPO-derived oxidants can lead to modifications of SP-D structure with associated alterations in its characteristic aggregating activity.
表面活性蛋白 D(SP-D)在先天免疫和肺稳态中发挥着多样化且重要的作用。在急性炎症的小鼠细菌性肺炎模型中,中性粒细胞和髓过氧化物酶(MPO)与 SP-D 共定位,表明 MPO 衍生的活性物质可能改变 SP-D 的功能。SP-D 暴露于完整的 MPO-H2O2-卤化物系统会导致 SP-D 依赖性聚集活性丧失。次氯酸(HOCl),MPO 产生的主要氧化剂,也会导致类似的聚集活性丧失,同时还会产生异常的二硫键交联寡聚物。缺乏 N 端半胱氨酸残基的全长 SP-D 突变体和缺乏 N 端结构域的截断突变体对氧化剂诱导的二硫键改变具有抗性。HOCl 处理的人 SP-D 的质谱分析表明发生了几种修饰,但没有涉及关键配体结合残基。Cys15 发生可检测的氧化,但在 C 端凝集素结构域中未观察到 HOCl 诱导的半胱氨酸修饰。总之,这些发现将异常的二硫键交联定位到 N 端结构域。MPO 缺陷型小鼠在肺炎模型中显示 SP-D 的交联减少和 SP-D 依赖性聚集活性增加。因此,MPO 衍生的氧化剂可导致 SP-D 结构发生修饰,并伴有其特征性聚集活性的改变。